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Four novel alkyl 2-cyanoacylate monomers and their use in latent fingermark detection by mid-infrared spectral imaging.

机译:四种新型的2-氰基酰基丙烯酸烷基酯单体及其在中红外光谱成像潜在指纹检测中的应用。

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Four novel alkyl 2-cyanoacrylate monomers (alkyl=1-cyanoethyl, 2-cyanoethyl, trideuteromethyl and pentadeuteroethyl) have been tested for their ability to develop latent fingermarks that can then be visualized using mid-infrared spectral (chemical) imaging. Each of the four monomers was chosen for its potential to produce a strong, isolated infrared spectral band in its corresponding polymer (to provide spectral contrast against most backgrounds), as well as for its potential ability to be fumed onto fingermarks in the manner of conventional ethyl 2-cyanoacrylate (superglue). With the exception of the 2-cyanoethyl 2-cyanoacrylate, which had to be fumed under reduced pressure, all of the monomers were found to be sufficiently volatile to be fumed in a conventional fuming cabinet. All four monomers polymerized selectively on fingermark ridges on a variety of non-porous and semi-porous surfaces, leading to excellent development of the fingermarks. Unfortunately, although high quality mid-infrared spectral images of the fingermarks could be formed for all of the polymers at various frequencies, the new CN or CD stretching vibrations did not give rise to strong enough absorption intensities for good contrast on difficult backgrounds such as polymer banknotes. However, in the 1-cyanoethyl 2-cyanoacrylate polymer, the presence of the additional nitrile group had the unintended but desirable effect of shifting the strong CO absorption to higher frequencies, moving it away from interfering banknote absorptions. This enabled fingermark contrast to be achieved even against the intaglio printing on the banknotes.
机译:已经测试了四种新型的2-氰基丙烯酸烷基酯单体(烷基= 1-氰基乙基,2-氰基乙基,三氘甲基和五烯丙基乙基)形成潜在指印的能力,然后可以使用中红外光谱(化学)成像将其可视化。选择四种单体中的每一种,是因为它有可能在其相应的聚合物中产生强的,孤立的红外光谱带(以提供与大多数背景的光谱对比),并且具有以常规方式熏制到指印上的潜在能力2-氰基丙烯酸乙酯(强力胶)。除了必须在减压下进行热解的2-氰基丙烯酸2-氰基乙酯外,发现所有单体都具有足够的挥发性,可以在常规的发烟柜中进行热解。所有四种单体均在各种无孔和半孔表面的指印脊上选择性聚合,从而导致指印的优异显影。不幸的是,尽管可以在各种频率下为所有聚合物形成高质量的中指指纹光谱图像,但新的CN或CD拉伸振动并未产生足够强的吸收强度,无法在聚合物等困难背景下形成良好的对比度钞票。然而,在1-氰基乙基2-氰基丙烯酸酯聚合物中,额外的腈基的存在具有意想不到的但合乎需要的效果,即将强力的CO吸收移至更高的频率,使其远离干扰的钞票吸收。即使在钞票上进行凹版印刷时,也可以实现指纹对比。

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